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首页> 外文期刊>Acta astronautica >Cylindrical shock wave generated by a moving piston in a rotational axisymmetric non-ideal gas with conductive and radiative heat-fluxes in the presence of azimuthal magnetic field
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Cylindrical shock wave generated by a moving piston in a rotational axisymmetric non-ideal gas with conductive and radiative heat-fluxes in the presence of azimuthal magnetic field

机译:在旋转轴对称非理想气体中的移动活塞产生圆柱冲击波,在方位角磁场存在下导电和辐射热通量

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摘要

The propagation of a cylindrical shock wave in a rotational axisymmetric non-ideal gas with heat conduction and radiation heat-flux, in the presence of a spatially decreasing azimuthal magnetic field, driven out by a moving piston is investigated. The fluid velocities and the azimuthal magnetic field in the ambient medium are assume to be varying and obeying power laws. The gas is assumed to be electrically conducting and obey a simplified van der Waals equation of state. The shock wave moves with variable velocity and the total energy of the wave is non-constant. Similarity solutions are obtained for the flow-field behind the shock and the effects of variation of Alfven Mach number, the conductive and radiative heat transfer parameters, the parameter of the non-idealness are worked out in detail. An increase in the value of Alfven Mach number or in the non-idealness parameter of the gas, decreases the compressibility of the gas and hence there is a decrease in the shock strength; whereas the reverse effects on compressibility and shock strength are obtained with an increase in conductive or radiative heat transfer parameter. It is shown that due to the consideration of rotating medium the compressibility of the gas and the shock strength increase. Further, it is investigated that with an increase in the parameters of conductive and radiative heat transfer the tendency of formation of maxima in the distribution of pressure and minimum in magnetic field and non-dimensional axial component of vorticity vector decreases. It is interesting to note that the pressure and density vanish at the inner surface (piston) and hence a vacuum is formed at the axis of symmetry, which is in excellent agreement with the laboratory conditions to produce a shock wave. A comparison between the cases of rotating and non-rotating medium is also made.
机译:研究了通过移动活塞驱动的空间减小的方位磁场存在在空间减小的方位磁场的旋转轴对称非理想气体中的圆柱冲击波与热导通和辐射热通量的传播。环境介质中的流体速度和方位角磁场被认为是不同的并且遵守动力法。假设气体导电并遵守简化的范德瓦尔斯方程。冲击波以可变速度移动,波的总能量是非恒定的。对于休克后面的流场获得相似性解决方案以及Alfven Mach数量的变化的影响,导电和辐射传热参数的变化,详细研究了非理想性的参数。 Alfven Mach数量或气体非理想参数的值增加,降低了气体的可压缩性,因此减少了震荡强度;然而,通过增加导电或辐射传热参数来获得对压缩性和冲击强度的反向影响。结果表明,由于考虑旋转介质,气体的可压缩性和冲击力增加。此外,研究了导电和辐射传热的参数的增加,在磁场的压力分布和最小的磁场和涡旋载体的非尺寸轴向分量中形成最大值的趋势降低。值得注意的是,在内表面(活塞)处消失的压力和密度消失,因此在对称轴上形成真空,这与实验室条件非常吻合以产生冲击波。还制造了旋转和非旋转介质的情况之间的比较。

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